Alpha-substituted omega-3 lipids that are activators or modulators of the peroxisome proliferators-activated receptor (PPAR)
a technology of activators or modulators of peroxisome proliferators, omega-3 lipids, applied in the direction of sugar derivatives, biocide, plant growth regulators, etc., can solve the problems that the use of pufas has not yet been fully evaluated, and the potential of their pharmaceutical potential is not yet fully evaluated
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[0137]In the research work leading to the present invention, it was surprisingly found that omega-3 lipid compounds represented by the general formula (I) have a remarkably high affinity for the nuclear receptors of the PPAR family.
[0138]It is known that PPARα is the most promiscuous of the PPARs, interacting with both saturated and unsaturated fatty acids. PPARδ interacts with saturated and unsaturated fatty acids, albeit less efficiently than PPARα. PPARγ shows the most restricted fatty acid binding profile, interacting most efficiently with PUFAs and only weakly with monounsaturated fatty acids (Xu et al, Molecular Cell, 1999, 397-403).
[0139]The effects of the PUFAs on these nuclear receptors are not only a result of fatty acid structure and affinity to the receptor. Factors contributing to the composition of the intracellular non-esterified fatty acids (NEFA) levels are also important. This NEFA pool is affected by the concentration of exogenous fatty acids entering the cell and...
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